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The Role of Reductive Stress in the Pathogenesis of Endocrine-Related Metabolic Diseases and Cancer
Mitko Mladenov1,2, Iliyana Sazdova3, Nikola Hadzi-Petrushev1
1Institute of Biology, Faculty of Natural Sciences and Mathematics, Ss. Cyril and Methodius University, 1000 Skopje, North Macedonia.
Abstract:
Reductive stress (RS), characterized by excessive accumulation of reducing equivalents such as NADH and NADPH, is emerging as a key factor in metabolic disorders and cancer. While oxidative stress (OS) has been widely studied, RS and its complex interplay with endocrine regulation remain less understood. This review explores molecular circuits of bidirectional crosstalk between metabolic hormones and RS, focusing on their role in diabetes, obesity, cardiovascular diseases, and cancer. RS disrupts insulin secretion and signaling, exacerbates metabolic inflammation, and contributes to adipose tissue dysfunction, ultimately promoting insulin resistance. In cardiovascular diseases, RS alters vascular smooth muscle cell function and myocardial metabolism, influencing ischemia-reperfusion injury outcomes. In cancer, RS plays a dual role: it enhances tumor survival by buffering OS and promoting metabolic reprogramming, yet excessive RS can trigger proteotoxicity and mitochondrial dysfunction, leading to apoptosis. Recent studies have identified RS-targeting strategies, including redox-modulating therapies, nanomedicine, and drug repurposing, offering potential for novel treatments. However, challenges remain, particularly in distinguishing physiological RS from pathological conditions and in overcoming therapy-induced resistance. Future research should focus on developing selective RS biomarkers, optimizing therapeutic interventions, and exploring the role of RS in immune and endocrine regulation.
Insights
Reductive stress (RS), an imbalance of reducing equivalents like NADH, impacts metabolic disorders and cancer. Understanding its link with hormones is crucial for new therapeutic strategies targeting diseases like diabetes and cancer.
Area of Science:
- Biochemistry
- Endocrinology
- Pathophysiology
Background:
- Reductive stress (RS) involves excessive reducing equivalents (NADH, NADPH), contrasting with well-studied oxidative stress (OS).
- The interplay between RS and endocrine regulation is not fully understood, particularly in metabolic disorders and cancer.
Purpose of the Study:
- To review the molecular mechanisms of crosstalk between metabolic hormones and RS.
- To elucidate the role of RS in diabetes, obesity, cardiovascular diseases, and cancer.
Main Methods:
- Literature review of molecular circuits and bidirectional crosstalk.
- Analysis of RS's impact on cellular functions and disease pathogenesis.
Main Results:
- RS disrupts insulin secretion/signaling, promotes inflammation, and causes adipose dysfunction, leading to insulin resistance.
- In cardiovascular diseases, RS affects vascular smooth muscle and myocardial metabolism.
- RS has a dual role in cancer: promoting survival via OS buffering and metabolic reprogramming, but also inducing apoptosis through proteotoxicity.
Conclusions:
- RS is a significant factor in metabolic disorders and cancer, with complex roles.
- Emerging RS-targeting strategies include redox modulators and nanomedicine.
- Further research is needed for selective biomarkers and optimized therapies for RS-related conditions.
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